# Copyright (C) Dnspython Contributors, see LICENSE for text of ISC license
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# Copyright (C) 2001-2017 Nominum, Inc.
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#
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# Permission to use, copy, modify, and distribute this software and its
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# documentation for any purpose with or without fee is hereby granted,
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# provided that the above copyright notice and this permission notice
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# appear in all copies.
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#
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# THE SOFTWARE IS PROVIDED "AS IS" AND NOMINUM DISCLAIMS ALL WARRANTIES
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# WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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# MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL NOMINUM BE LIABLE FOR
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# ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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# WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
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# ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT
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# OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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"""Help for building DNS wire format messages"""
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from io import BytesIO
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import struct
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import random
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import time
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import dns.exception
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import dns.tsig
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from ._compat import long
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QUESTION = 0
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ANSWER = 1
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AUTHORITY = 2
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ADDITIONAL = 3
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class Renderer(object):
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"""Helper class for building DNS wire-format messages.
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Most applications can use the higher-level L{dns.message.Message}
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class and its to_wire() method to generate wire-format messages.
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This class is for those applications which need finer control
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over the generation of messages.
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Typical use::
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r = dns.renderer.Renderer(id=1, flags=0x80, max_size=512)
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r.add_question(qname, qtype, qclass)
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r.add_rrset(dns.renderer.ANSWER, rrset_1)
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r.add_rrset(dns.renderer.ANSWER, rrset_2)
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r.add_rrset(dns.renderer.AUTHORITY, ns_rrset)
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r.add_edns(0, 0, 4096)
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r.add_rrset(dns.renderer.ADDTIONAL, ad_rrset_1)
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r.add_rrset(dns.renderer.ADDTIONAL, ad_rrset_2)
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r.write_header()
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r.add_tsig(keyname, secret, 300, 1, 0, '', request_mac)
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wire = r.get_wire()
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output, a BytesIO, where rendering is written
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id: the message id
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flags: the message flags
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max_size: the maximum size of the message
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origin: the origin to use when rendering relative names
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compress: the compression table
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section: an int, the section currently being rendered
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counts: list of the number of RRs in each section
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mac: the MAC of the rendered message (if TSIG was used)
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"""
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def __init__(self, id=None, flags=0, max_size=65535, origin=None):
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"""Initialize a new renderer."""
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self.output = BytesIO()
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if id is None:
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self.id = random.randint(0, 65535)
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else:
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self.id = id
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self.flags = flags
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self.max_size = max_size
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self.origin = origin
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self.compress = {}
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self.section = QUESTION
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self.counts = [0, 0, 0, 0]
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self.output.write(b'\x00' * 12)
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self.mac = ''
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def _rollback(self, where):
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"""Truncate the output buffer at offset *where*, and remove any
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compression table entries that pointed beyond the truncation
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point.
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"""
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self.output.seek(where)
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self.output.truncate()
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keys_to_delete = []
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for k, v in self.compress.items():
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if v >= where:
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keys_to_delete.append(k)
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for k in keys_to_delete:
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del self.compress[k]
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def _set_section(self, section):
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"""Set the renderer's current section.
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Sections must be rendered order: QUESTION, ANSWER, AUTHORITY,
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ADDITIONAL. Sections may be empty.
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Raises dns.exception.FormError if an attempt was made to set
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a section value less than the current section.
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"""
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if self.section != section:
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if self.section > section:
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raise dns.exception.FormError
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self.section = section
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def add_question(self, qname, rdtype, rdclass=dns.rdataclass.IN):
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"""Add a question to the message."""
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self._set_section(QUESTION)
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before = self.output.tell()
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qname.to_wire(self.output, self.compress, self.origin)
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self.output.write(struct.pack("!HH", rdtype, rdclass))
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after = self.output.tell()
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if after >= self.max_size:
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self._rollback(before)
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raise dns.exception.TooBig
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self.counts[QUESTION] += 1
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def add_rrset(self, section, rrset, **kw):
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"""Add the rrset to the specified section.
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Any keyword arguments are passed on to the rdataset's to_wire()
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routine.
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"""
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self._set_section(section)
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before = self.output.tell()
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n = rrset.to_wire(self.output, self.compress, self.origin, **kw)
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after = self.output.tell()
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if after >= self.max_size:
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self._rollback(before)
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raise dns.exception.TooBig
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self.counts[section] += n
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def add_rdataset(self, section, name, rdataset, **kw):
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"""Add the rdataset to the specified section, using the specified
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name as the owner name.
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Any keyword arguments are passed on to the rdataset's to_wire()
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routine.
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"""
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self._set_section(section)
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before = self.output.tell()
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n = rdataset.to_wire(name, self.output, self.compress, self.origin,
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**kw)
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after = self.output.tell()
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if after >= self.max_size:
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self._rollback(before)
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raise dns.exception.TooBig
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self.counts[section] += n
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def add_edns(self, edns, ednsflags, payload, options=None):
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"""Add an EDNS OPT record to the message."""
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# make sure the EDNS version in ednsflags agrees with edns
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ednsflags &= long(0xFF00FFFF)
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ednsflags |= (edns << 16)
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self._set_section(ADDITIONAL)
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before = self.output.tell()
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self.output.write(struct.pack('!BHHIH', 0, dns.rdatatype.OPT, payload,
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ednsflags, 0))
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if options is not None:
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lstart = self.output.tell()
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for opt in options:
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stuff = struct.pack("!HH", opt.otype, 0)
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self.output.write(stuff)
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start = self.output.tell()
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opt.to_wire(self.output)
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end = self.output.tell()
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assert end - start < 65536
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self.output.seek(start - 2)
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stuff = struct.pack("!H", end - start)
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self.output.write(stuff)
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self.output.seek(0, 2)
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lend = self.output.tell()
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assert lend - lstart < 65536
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self.output.seek(lstart - 2)
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stuff = struct.pack("!H", lend - lstart)
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self.output.write(stuff)
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self.output.seek(0, 2)
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after = self.output.tell()
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if after >= self.max_size:
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self._rollback(before)
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raise dns.exception.TooBig
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self.counts[ADDITIONAL] += 1
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def add_tsig(self, keyname, secret, fudge, id, tsig_error, other_data,
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request_mac, algorithm=dns.tsig.default_algorithm):
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"""Add a TSIG signature to the message."""
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s = self.output.getvalue()
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(tsig_rdata, self.mac, ctx) = dns.tsig.sign(s,
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keyname,
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secret,
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int(time.time()),
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fudge,
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id,
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tsig_error,
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other_data,
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request_mac,
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algorithm=algorithm)
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self._write_tsig(tsig_rdata, keyname)
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def add_multi_tsig(self, ctx, keyname, secret, fudge, id, tsig_error,
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other_data, request_mac,
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algorithm=dns.tsig.default_algorithm):
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"""Add a TSIG signature to the message. Unlike add_tsig(), this can be
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used for a series of consecutive DNS envelopes, e.g. for a zone
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transfer over TCP [RFC2845, 4.4].
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For the first message in the sequence, give ctx=None. For each
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subsequent message, give the ctx that was returned from the
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add_multi_tsig() call for the previous message."""
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s = self.output.getvalue()
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(tsig_rdata, self.mac, ctx) = dns.tsig.sign(s,
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keyname,
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secret,
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int(time.time()),
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fudge,
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id,
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tsig_error,
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other_data,
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request_mac,
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ctx=ctx,
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first=ctx is None,
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multi=True,
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algorithm=algorithm)
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self._write_tsig(tsig_rdata, keyname)
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return ctx
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def _write_tsig(self, tsig_rdata, keyname):
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self._set_section(ADDITIONAL)
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before = self.output.tell()
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keyname.to_wire(self.output, self.compress, self.origin)
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self.output.write(struct.pack('!HHIH', dns.rdatatype.TSIG,
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dns.rdataclass.ANY, 0, 0))
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rdata_start = self.output.tell()
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self.output.write(tsig_rdata)
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after = self.output.tell()
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assert after - rdata_start < 65536
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if after >= self.max_size:
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self._rollback(before)
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raise dns.exception.TooBig
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self.output.seek(rdata_start - 2)
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self.output.write(struct.pack('!H', after - rdata_start))
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self.counts[ADDITIONAL] += 1
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self.output.seek(10)
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self.output.write(struct.pack('!H', self.counts[ADDITIONAL]))
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self.output.seek(0, 2)
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def write_header(self):
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"""Write the DNS message header.
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Writing the DNS message header is done after all sections
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have been rendered, but before the optional TSIG signature
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is added.
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"""
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self.output.seek(0)
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self.output.write(struct.pack('!HHHHHH', self.id, self.flags,
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self.counts[0], self.counts[1],
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self.counts[2], self.counts[3]))
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self.output.seek(0, 2)
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def get_wire(self):
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"""Return the wire format message."""
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return self.output.getvalue()
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